The Design of On-the-Fly Virtual Channel Allocation for Low Cost High Performance On-Chip Routers

S. Nguyen, S. Oyanagi
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引用次数: 8

Abstract

Network-on-Chip (NoC) is an important communication infrastructure for System-on-Chips (SoCs). Designing high performance NoCs with minimized area overhead is becoming a major technical challenge. In this paper, we propose the on-the-fly virtual channel (VC) allocation for low cost high performance on-chip routers. By performing the VC allocation based on the result of switch allocation, the dependency between VC allocation and switch traversal is removed and these stages can be performed in parallel. In this manner, the pipeline of a packet transfer can be shortened in a non-speculative fashion. We have implemented the proposed router on FPGA and evaluated in terms of communication latency, throughput and hardware amount. The experimental results show that, the proposed router with on-the-fly VC allocation reduces the communication latency by 27.3%, and improves throughput by 21.4% as compared to the conventional VC router. In comparison with the look-ahead speculative router, it improves the throughput by 6.2% with 17.6% reduction of area for control logic.
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面向低成本高性能片上路由器的实时虚拟信道分配设计
片上网络(NoC)是片上系统(soc)的重要通信基础设施。以最小的面积开销设计高性能noc正成为主要的技术挑战。本文提出了一种低成本高性能片上路由器的实时虚拟信道(VC)分配方法。通过基于交换机分配的结果执行VC分配,消除了VC分配与交换机遍历之间的依赖关系,这些阶段可以并行执行。通过这种方式,数据包传输的管道可以以一种非推测的方式缩短。我们已经在FPGA上实现了所提出的路由器,并在通信延迟、吞吐量和硬件数量方面进行了评估。实验结果表明,与传统的VC路由器相比,该动态VC分配路由器的通信延迟降低了27.3%,吞吐量提高了21.4%。与前向推测路由器相比,吞吐量提高了6.2%,控制逻辑面积减少了17.6%。
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